Abstract:Particle grading is one of the key parameters affecting the mechanical properties of roadbed fill. The traditional sieving method is difficult to refine and quickly determine the sandy soil particle group due to the large interval between sieve diameters. A new method for estimating the sandy soil particle gradation based on image scanning and mean sampling technology is proposed. The method is based on the scanning electron microscope(SEM) and image processing software ImageJ joint testing technology to determine the geometric parameters of the sand particle morphology. The difference in the distance between any two parallel tangent lines of irregular particles on the projected image contour, namely the Feret diameter as the equivalent diameter of an ideal sphere is discussed, and the equivalent area and volume equations for a single sand particle are established. Based on the general rule that the relative density of sand particles gradually increases with the decrease of particle size, a negative power function model between sand particle size and relative density is fitted, and a function expression for the mass and particle size of a single sand particle is established. Finally, the accuracy of the arithmetic mean method and mean sampling method for sand particle grading is examined by sieving method. The results show that the relative error of ImageJ in identifying sandy soil particles of millimeter level and below depends on the difference between particle size and scale length, that is, when the particle size is smaller than the scale length, the larger the difference, the lower the measurement accuracy. When the particle size approaches or exceeds the length of the scale, the measurement accuracy is higher and more stable. The arithmetic mean method shows strong randomness and is not suitable as a basis for determining the grading parameters of sand particles. The grading curve of sandy soil particles obtained by the mean sampling method with short diameter is the most consistent with the results of the sieve method, which can be used for the estimation of sandy soil particles grading parameters, followed by average diameter, long diameter. The new method can arbitrarily divide sand particle groups and obtain relatively accurate grading parameters, with reliable results and convenient operation.
HONG M H, XU C, ZENG W Z, et al. Research on pore structure and fractal characteristics of saline soil[J]. China Rural Water Conservancy and Hydropower, 2017(7): 54-58.
WANG J Q, ZHONG W T, TANG Y, et al. Analysis of the effect of dynamic properties of gravelly soil fill before and after reinforcement[J]. Journal of North China University of Water Resources and Hydropower (Natural Science Edition) , 2023, 44(1): 93-99.
CHEN A Y, GUO J H. Modeling study on soft rock fill roadbed of Wuhan-Guangzhou passenger dedicated line[J]. Geotechnical Mechanics, 2008, 29(10): 2882-2886.
ZHONG Y D, LI Y Q, LIU L P, et al. Measurement and seed source analysis of balsam fir seeds based on scanner and ImageJ software[J]. Journal of Southwest Forestry University (Natural Science), 2017, 37(6): 48-53.
ZHANG J W, HE G, WANG J C. Accuracy of infrared image recognition of liquid intervening hard-to-identify gangue at different mixing degrees[J]. Journal of Coal, 2022, 47(3): 1370-1381.
LIU Q B, XIANG W, BUDHU M, et al. Quantification of particle shape in sand and soil and its effect on mechanical indexes[J]. Geotechnical Mechanics, 2011, 32(S1): 190-197.
ZHOU J, TIAN Q, YING H, et al. Image analysis method of emulsified asphalt particle size[J]. Journal of Construction Materials, 2013, 16(1): 81-85.
WEI M, LUO Q, JIANG L W, et al. Model experimental study on the effect of fill reinforcement on the seismic response of cantilever retaining walls[J]. Vibration and Shock, 2022, 41(19): 237-247.
WU P Q, MA X F, CONG Y. Centrifugal simulation experimental study on the stability of sandy soil slopes [J]. Roadbed Engineering, 2014, (5): 115-119.
WANG J Q, XU L J, LI Y Y, et al. Influence of dynamic loading frequency on dynamic characteristics of geogrid reinforced soil retaining walls [J]. Journal of Vibration Engineering, 2019, 32(5): 898-907.
XU W Z, XU D, LIN Q L, et al. Determination of appearance and shape parameters of rice based on cell phone photography and ImageJ software[J]. Chinese Journal of Cereals and Oils, 2019, 34(10): 109-113.
FENG Y J, WANG J M, LIANG M, et al. Optimization of ImageJ-based method for quantitative determination of cigarette packet ash value[J]. Food and Machinery, 2018, 34(3): 216-219.
刘清秉, 项伟, Budhu M, 等. 砂土颗粒形状量化及其对力学指标的影响分析[J]. 岩土力学, 2011, 32(S1): 190-197.
ZHAO Y, ZHENG J Y, GUO P, et al. Application of ImageJ software in the analysis of solid particles in mudflow[J]. Journal of Lanzhou University (Natural Science Edition), 2015, 51(6): 877-881.
XU Z X, GUO S B. Pore structure analysis of shale reservoirs based on argon ion polishing-SEM and ImageJ software—An example of the Steasanto Formation in the Central Yangzi region[J]. Journal of Northeast Petroleum University, 2014, 38(4): 45-51.
SUN H F, CAO C L, SONG Y P. Application of laser grain size analysis in particle size analysis of sandy sediments[J]. Marine Geology and Quaternary Geology, 2015, 35(2): 185-192.
WANG Y P, LI D W, WANG J P. Study on particle size characterization of alluvial deposits in Qiaojia section of Jinshajiang River by dynamic image method[J]. Geological Review, 2019, 65(2): 503-513.
CHI Y, SHI Y C, WU H Y, et al. Numerical simulation of the whole process of anchor movement in sandy seabed[J]. Journal of Wuhan University (Engineering Edition), 2017, 50(6): 807-814.
ZENG Z T, LIU Z Q, XU Y S, et al. Development and modeling of an underground pipe test platform for seepage-heat transfer in karst groundwater[J]. Renewable Energy, 2022, 40(9): 1173-1180.
MI H Z, HU Y N. Experimental study on engineering properties of lime soil in Lanzhou[J]. Building Science, 2009, 25(1): 55-58.
JIANG H G, BIAN X C, XU X, et al. Full-scale physical modeling of dynamic behavior of high-speed railroad slab-on-rail roadbed under moving train load[J]. Journal of Geotechnical Engineering, 2014, 36(2): 354-362.
ZHANG C C, SHI B, LIU S P, et al. Study on the coupling between drilled hole backfill and direct buried strain sensing fiber optic cable[J]. Journal of Geotechnical Engineering, 2018, 40(11): 1959-1967.
LIANG Y, ZENG C, CHU H, et al. Experimental research on infiltration damage discrimination method of bulk soil [J]. Peoples Yangtze River, 2015, 46(18): 75-79.
FENG Z J, ZHANG C, HE J B, et al. Shaking table test on liquefaction resistance of group pile foundation under strong earthquake[J]. Journal of Transportation Engineering, 2021, 21(4): 72-83.
CAI N, CAO L W, SHANG J Q. Effect of chemical action on permeability of chalk sand during seepage of inorganic salt solution[J]. Science Technology and Engineering, 2018, 18(16): 312-317.
WANG S J, HE M C, ZHANG J Z. Estimation of relative density of sandy soils using normalized standard penetration N values[J]. Journal of Geotechnical Engineering, 2005, 27(6): 682-685.
LI J, PAN P, CUI Z Z, et al. Repeated freezing and thawing effects of chalk in winter irrigation areas[J]. Science Technology and Engineering, 2017, 17(14): 268-272.
ZHANG X J. Experimental study on soil-water characteristic curve of pulverized soil on the slope of Tal open pit coal mine[J]. Coal Engineering, 2019, 51(8): 135-139.
ZHOU F H, LUO S Y, SUN J C. Formation mechanism and comprehensive treatment countermeasures of K18 graben landslide of Nanning Ring Expressway[J]. Highway and Transportation Science and Technology, 2007, 24(7): 44-47.
GUO X L, LI S S. Experimental study on the compaction and permeability characteristics of shale weathering material in Shuibuya Water Conservancy Hub[J]. Peoples Yangtze River, 1996, 27(12): 19-21.
MA Q G, YI X D, LANG M T, et al. Geotechnical properties of Xinyang primary clay [J]. Journal of Xinyang Normal College (Natural Science Edition), 2022, 35(2): 310-317.
XU G M, REN G F, GU X W, et al. Experimental study on lateral pressure of passive section piles for new type of sheet pile wharf group pile foundation[J]. Journal of Geotechnical Engineering, 2018, 40(3): 502-511.
ZHOU Z L, CHEN G X, HUANG C X, et al. Experimental study on liquefaction characteristics of saturated chalk based on cumulative dissipation energy[J]. Journal of Earthquake Engineering, 2015, 37(1): 1-5.
WANG S T, SHENG Y, CAO W, et al. Estimation of underground ice reserves in the perennial permafrost layer in the Yellow River source area based on geomorphologic classification[J]. Advances in Water Science, 2017, 28(6): 801-810.
ZHENG A R, ZHU H M. Experimental study on flocculation to accelerate the deposition of blow-fill soil[J]. Journal of Geotechnical Engineering, 2017, 39(S2): 145-148.
LÜ C, TANG C S, LI S J, et al. Research on particle grading analysis of sandy soil based on digital image processing technology [J]. Journal of College Geology, 2019, 25(3): 431-436.